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Introduction to Thermodynamics of Irreversible Processes

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The article was published on 1968-01-15 and is currently open access. It has received 2511 citations till now.

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A diffusion approach to the electrolyte leakage from plant tissues

TL;DR: In this article, an electro-diffusion model of the leakage is proposed based on the balance of fluxes through the plasmalemma and the cell wall, a system of differential equations describing the ion concentration in the outer solution is found.
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Non-isothermal reaction-diffusion systems with thermodynamically coupled heat and mass transfer

TL;DR: In this paper, the authors present the modeling equations of non-isothermal reaction-diffusion (RD) systems with coupled heat and mass fluxes without the coupling of chemical reactions using the linear non-equilibrium thermodynamic approach.
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Prediction of corrosion product stability in high-temperature aqueous systems☆

TL;DR: In this paper, the authors examined thermodynamic data for metal oxidation/oxide reduction reactions of Fe, Ni, Co and Cu, and for formation, oxidation, and reduction of NiFe2O4, CoFe2 O4, CuFeO2 and CuFe 2O4 at temperatures up to 300°C.
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Macroscopic constraints for the minimum entropy production principle.

TL;DR: It is shown that, in the linear regime, steady states satisfy a minimum entropy production principle, and the result is applied to master equation systems, opening a new path to a well-known version of the principle regarding invariant states.
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Time delays and advances in classical and quantum systems

TL;DR: In this paper, positive and negative time delays in various processes of classical and quantum physics are discussed, and an interpretation of the Hartmann paradox is suggested for the quantum tunneling and the three-dimensional scattering problem on a central potential.